一种存储组件及近眼显示模组

By designing a foldable storage component in the near-eye display module, the problems of excessive module size and weight are solved, achieving more efficient space utilization and wearing comfort.

CN224519045UActive Publication Date: 2026-07-17GYGES LABS PTE LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GYGES LABS PTE LTD
Filing Date
2025-08-15
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The internal structure design of existing near-eye display modules is unreasonable, resulting in large size and weight, making them inconvenient to wear for extended periods.

Method used

A storage component is designed, including a first plate and a second plate, which are connected by a fifth folding segment. This allows the storage component to switch between an unfolded state and a folded state, forming a storage space. The storage chip and the connection position are set separately to make full use of the space and avoid the storage component being too large in a single direction.

Benefits of technology

The folding design reduces the size of the near-eye display module, improves wearing comfort, enhances space utilization, and avoids excessive overall module size caused by storage components.

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Abstract

本申请涉及一种存储组件及近眼显示模组。存储组件包括第一板体、存储芯片、第二板体和第五折叠段。存储芯片设于第一板体上,第二板体上设有连接位。第五折叠段连接第一板体和第二板体,第五折叠段被配置成允许弯折,并将存储组件在展开状态和折叠状态切换。在展开状态,第一板体和第二板体在同一个平面内。在折叠状态,第一板体和第二板体限定出收纳空间,第一板体和第二板体之间形成收纳角。通过将存储芯片和连接位分开设置,在展开状态下,方便存储芯片、连接位的安装;在折叠状态下,第一板体和第二板体之间形成收纳角,存储芯片和连接位在不同的平面上,避免存储组件在单个方向上的尺寸过大。
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Claims

1. A memory assembly (200), characterized by, include: First plate (210); A memory chip (211) is disposed on the first board (210); A second board (220) is provided with a connection point (221), the connection point (221) being connected to the memory chip (211), and the connection point (221) being used to connect to external devices; and, A fifth folding segment (212) connects the first plate (210) and the second plate (220). The fifth folding segment (212) is configured to allow bending and to switch the storage component (200) between an unfolded state and a folded state. In the unfolded state, the first plate (210) and the second plate (220) are in the same plane; in the folded state, the first plate (210) and the second plate (220) define a storage space suitable for storing external devices, and a storage angle A is formed between the first plate (210) and the second plate (220), where 0° < A < 180°.

2. The storage assembly (200) of claim 1, characterized by The first plate (210) and the second plate (220) each include a first surface and a second surface, which are two opposing surfaces. In the folded state, the first surface of the first plate (210) is configured to fold to form the storage angle A between itself and the first surface of the second plate (220). The first surface of the second plate (220) is provided with the connection position (221). The memory chip (211) is located on the first surface of the second plate (220) or the second surface of the second plate (220). The connection position (221) is electrically connected to the memory chip (211) through the fifth folding segment (212).

3. The storage assembly (200) of claim 2, characterized by In the unfolded state, the first plate (210), the fifth fold segment (212), and the second plate (220) are in a straight line, and the storage component (200) is in a straight line. In the unfolded state, the memory chip (211) is located on the second side of the first plate (210), and the connection point (221) is located on the first side of the second plate (220); In the folded state, the storage chip (211) is located on the side of the first plate (210) away from the storage space, and the connection position (221) is located within the storage space.

4. The storage assembly (200) of claim 2, wherein, The area of ​​the fifth fold segment (212) is smaller than the area of ​​the first plate (210) and the area of ​​the second plate (220), and the area of ​​the first plate (210) is greater than or equal to the area of ​​the second plate (220).

5. The storage assembly (200) of claim 4, characterized by The fifth fold segment (212) is a flexible circuit board, the fifth fold segment (212) is strip-shaped, and the width of the fifth fold segment (212) is less than or equal to the width of the first plate (210) and the width of the second plate (220); The length of the fifth fold segment (212) is less than the length of the first plate (210) and the length of the second plate (220).

6. The storage assembly (200) of claim 1, wherein, The connection position (221) includes a plurality of spaced electrical contacts arranged in an array along the length and width of the second plate (220), and the electrical contacts are configured to be detachably electrically connected to an external device.

7. The storage assembly (200) of claim 1, wherein, The second plate (220) is provided with a reinforcing member, the connecting position (221) is provided on one side of the second plate (220), and the reinforcing member is provided on the other side opposite to one side of the second plate (220); the reinforcing member and the second plate (220) are integrally formed; the storage angle is 90 degrees.

8. A near-eye display module (01), characterized in that, include: A display assembly (100) having a storage connection bit; The storage component (200) according to any one of claims 1-7, wherein the storage component (200) is in a folded state, the storage connection position is connected to the connection position (221), and the display component (100) is disposed within the storage space.

9. The near-to-eye display module (01) according to claim 8, characterized in that The display assembly (100) is parallel to the second plate (220), the display assembly (100) is spaced apart from the first plate (210), and the light emission direction of the display assembly (100) is away from the second plate (220).

10. The near-to-eye display module (01) according to claim 8, characterized in that The height of the display assembly (100) is less than the height of the first plate (210).